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大鼠睾丸糖缀合物的组织化学分析。1. 生精小管中N-连接糖类的亚群。

Histochemical analysis of rat testicular glycoconjugates. 1. Subsets of N-linked saccharides in seminiferous tubules.

作者信息

Jones C J, Morrison C A, Stoddart R W

机构信息

Department of Pathological Sciences, University of Manchester, UK.

出版信息

Histochem J. 1992 Jun;24(6):319-26. doi: 10.1007/BF01046163.

Abstract

The distribution of N-linked glycans in rat testis has been probed using a panel of lectins derived from Galanthus nivalis (snowdrop, GNA), Canavalia ensiformis (jack bean, Con A), Lens culinaris (lentil, LCA), Pisum sativum (garden pea, PSA) and Phaseolus vulgaris, erythro- and leucoagglutinins (kidney bean, ePHA and lPHA). Several classes of N-linked glycan were identified in the spermatogenic series, and during differentiation into spermatozoa they altered in both their pattern of distribution and relative abundance. A population of tetra-antennary, non-bisected, complex glycans, detected by lPHA, was lost during the transition from spermatogonia to spermatocytes, while high-mannose structures were acquired; these were most abundant in spermatocytes, as were bi- and tri-antennary complex, non-bisected glycans, the latter becoming increasingly abundant on acrosomes and spermatozoa. Their bisected counterparts were more generally expressed throughout spermatogenic cells, although marked localization onto acrosomes and nuclear caps was again seen. Transition from spermatocytes to spermatids involved mainly changes of the acrosomal granule and nuclear cap, which were carried through to the final stages of differentiation. Sertoli cell surfaces and cytoplasmic granules showed a high level of N-glycan expression.

摘要

利用一组从雪花莲(雪滴花,GNA)、刀豆(洋刀豆,Con A)、小扁豆(兵豆,LCA)、豌豆(豌豆,PSA)和菜豆(红细胞凝集素和白细胞凝集素,四季豆,ePHA和lPHA)中提取的凝集素,对大鼠睾丸中N-连接聚糖的分布进行了探究。在生精系列中鉴定出了几类N-连接聚糖,在分化为精子的过程中,它们的分布模式和相对丰度都发生了变化。由lPHA检测到的一群四天线、未被平分的复杂聚糖,在从精原细胞向精母细胞转变的过程中消失了,同时获得了高甘露糖结构;这些结构在精母细胞中最为丰富,双天线和三天线复杂、未被平分的聚糖也是如此,后者在顶体和精子上越来越丰富。它们被平分的对应物在整个生精细胞中更普遍地表达,尽管在顶体和核帽上再次观察到明显的定位。从精母细胞到精子细胞的转变主要涉及顶体颗粒和核帽的变化,这些变化一直持续到分化的最后阶段。支持细胞表面和细胞质颗粒显示出高水平的N-聚糖表达。

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